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硅胶乳房植入物导致的包膜挛缩:可能的原因、生物相容性及预防策略。

Capsular contracture by silicone breast implants: possible causes, biocompatibility, and prophylactic strategies.

作者信息

Steiert Andreas E, Boyce Maria, Sorg Heiko

机构信息

Department of Plastic, Hand and Reconstructive Surgery, Hannover Medical School, Hannover, Germany.

出版信息

Med Devices (Auckl). 2013 Dec 2;6:211-8. doi: 10.2147/MDER.S49522.

Abstract

The most common implanted material in the human body consists of silicone. Breast augmentation and breast reconstruction using silicone-based implants are procedures frequently performed by reconstructive and aesthetic surgeons. A main complication of this procedure continues to be the development of capsular contracture (CC), displaying the result of a fibrotic foreign body reaction after the implantation of silicone. For many years, experimental and clinical trials have attempted to analyze the problem of its etiology, treatment, and prophylaxis. Different theories of CC formation are known; however, the reason why different individuals develop CC in days or a month, or only after years, is unknown. Therefore, we hypothesize that CC formation, might primarily be induced by immunological mechanisms along with other reasons. This article attempts to review CC formation, with special attention paid to immunological and inflammatory reasons, as well as actual prophylactic strategies. In this context, the word "biocompatibility" has been frequently used to describe the overall biological innocuousness of silicone in the respective studies, although without clear-cut definitions of this important feature. We have therefore developed a new five-point scale with distinct key points of biocompatibility. Hence, this article might provide the basis for ongoing discussion in this field to reduce single-publication definitions as well as increase the understanding of biocompatibility.

摘要

人体内最常见的植入材料是硅胶。整形外科医生和美容外科医生经常进行使用硅胶植入物的隆胸和乳房重建手术。该手术的一个主要并发症仍然是包膜挛缩(CC)的发生,这表现为硅胶植入后纤维化异物反应的结果。多年来,实验和临床试验一直试图分析其病因、治疗和预防问题。已知有不同的CC形成理论;然而,不同个体在几天或一个月内,或仅在数年之后才发生CC的原因尚不清楚。因此,我们假设CC的形成可能主要是由免疫机制以及其他原因引起的。本文试图回顾CC的形成,特别关注免疫和炎症原因以及实际的预防策略。在这种背景下,在各自的研究中,“生物相容性”一词经常被用来描述硅胶的整体生物学无害性,尽管对这一重要特征没有明确的定义。因此,我们制定了一个新的五点量表,明确了生物相容性的关键点。因此,本文可能为该领域正在进行的讨论提供基础,以减少单一出版物中的定义,并增进对生物相容性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e682/3855100/8d919b11ebcc/mder-6-211Fig1.jpg

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